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Enhanced degradation performance and microbial community diversity analysis of a microbial electrolytic cell with a double chamber for the treatment of wastewater containing p-bromoaniline
Wei, Qian; Li, Bowen; Zhao, Xia; Jiang, Feng; Xu, Yumin; Jia, Xiaoning
刊名Biochemical Engineering Journal
2022-07-01
卷号185
关键词Aniline Bacteria Biodegradation Cathodes Efficiency Electric potential Microbial fuel cells Wastewater treatment Anaerobic reactor Cathode potential Cell-be Cell/B.E Cell/BE Microbial diversity Microbial electrolytic cells P-bromoaniline Performance Removal efficiencies
ISSN号1369-703X
DOI10.1016/j.bej.2022.108539
英文摘要The feasibility and superiority of bioelectrochemical systems for the degradation of p-bromoaniline (p-BrA) have been confirmed previously. In this research, the influences of the cathode potential and initial p-BrA concentration on the performance of microbial electrolytic cells (MECs) were investigated. The degradation performance and degradation kinetics of a MEC and a conventional anaerobic reactor (CAR) were compared to analyze degradation products. The microbial species diversity in the MECs was studied to analyze changes following the introduction of electric potential. The optimized solution had a cathode potential of 0.5 V, an initial concentration of 50 mg/L, and a pH value of 7. Under these conditions, the removal efficiency for p-BrA was 94.94 %. In addition, after transitioning from a CAR to an MEC, the bacterial species diversity of the biocathode took place significant changes. Several types of aniline-degrading bacteria, such as Proteobacteria and Patescibacteria, and methane-producing bacteria, such as Anaerolineaceae, were dominant in the community of the cathodic biofilm. Experimental results showed that the removal of p-BrA degradation products was closely related to the diversity of cathode bacteria. © 2022 Elsevier B.V.
语种英语
出版者Elsevier B.V.
内容类型期刊论文
源URL[http://ir.lut.edu.cn/handle/2XXMBERH/159358]  
专题石油化工学院
作者单位School of Petrochemical Engineering, Lanzhou University of Technology, Lanzhou; 730050, China
推荐引用方式
GB/T 7714
Wei, Qian,Li, Bowen,Zhao, Xia,et al. Enhanced degradation performance and microbial community diversity analysis of a microbial electrolytic cell with a double chamber for the treatment of wastewater containing p-bromoaniline[J]. Biochemical Engineering Journal,2022,185.
APA Wei, Qian,Li, Bowen,Zhao, Xia,Jiang, Feng,Xu, Yumin,&Jia, Xiaoning.(2022).Enhanced degradation performance and microbial community diversity analysis of a microbial electrolytic cell with a double chamber for the treatment of wastewater containing p-bromoaniline.Biochemical Engineering Journal,185.
MLA Wei, Qian,et al."Enhanced degradation performance and microbial community diversity analysis of a microbial electrolytic cell with a double chamber for the treatment of wastewater containing p-bromoaniline".Biochemical Engineering Journal 185(2022).
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